George Nuttall
American-British bacteriologist
About George Nuttall
Lived 1862 – 1937 (aged 75). George Nuttall was a British and American immunologist, bacteriologist, university teacher, entomologist, microbiologist and physician.
George Henry Falkiner Nuttall FRS (5 July 1862 – 16 December 1937) was an American-British bacteriologist who contributed much to the knowledge of parasites and of insect carriers of diseases. He made significant innovative discoveries in immunology, about life under aseptic conditions, in blood chemistry, and about diseases transmitted by arthropods, especially ticks. He carried out investigations into the distribution of Anopheline mosquitoes in England in relation to the previous prevalence of malaria there. With William Welch he identified the organism responsible for causing gas gangrene.
Life
Nuttall was born in San Francisco, the second of three sons and two daughters of Robert Kennedy Nuttall, a British doctor who had migrated to San Francisco in 1850, and Magdalena, daughter of John Parrott of San Francisco. In 1865 the family moved to Europe. The children were educated in England, France, Germany and Switzerland. As a result, Nuttall spoke German, French, Italian and Spanish, which was extremely useful in his later career. Nuttall returned to the United States in 1878, obtaining his M.D. degree from the University of California, Berkeley in 1884. He then travelled with some of his family to Mexico for a year. His sister Zelia became a noted archaeologist and anthropologist of early Mexican cultures.
After a short period working at Johns Hopkins University in Baltimore under H. Newell Martin, he went to Göttingen in 1886 working with Carl Flügge and others. His research in Göttingen included studies on mechanisms of immunity. He received his PhD in zoology in 1890. After a year travelling he returned to Baltimore, working under William H. Welch and becoming associate in hygiene in 1892. He worked on the tubercle bacillus and identified the bacillus responsible for gas gangrene, now known as Clostridium perfringens.
From 1892 to 1899 Nuttall was in Germany once more, first in Göttingen, then in Berlin, where he worked at the Hygienic Institute (hygienischen Institut). In 1893 He published Hygienic Measures in Relation to Infectious Diseases, a book dealing with cleanliness, disinfection and fumigation in medical practice. He married Paula von Oertzen-Kittendorf in 1895. Working with Hans Thierfelder he developed methods for rearing guinea pigs under aseptic conditions, with no gut bacteria. This work laid the foundation for the field of Gnotobiosis, the study of organisms with known micro-organism populations. In 1895 he designed a microscopic thermostat for maintaining biological materials under study at a constant temperature. This was used for many years. In the same year Nuttall co-edited an important book on the bacteriology of diphtheria with Graham-Smith. Also in 1908 he was elected a fellow of Magdalen College. During World War I he began to investigate lice. This began in response to the practical problems with lice in the troops, but developed over the next few years into research on their biology and role in disease. The Quick Department was transferred to the Molteno Institute. After the establishment of the Molteno Institute, Nuttall became increasingly occupied with administration and fundraising, and published few papers. His wife Paula died in 1922. One publication from this period is a biographical note on German scientists of an earlier generation who he had known. He resigned the Quick Professorshipin 1931, and became emeritus Professor of Biology. He died suddenly in December 1937, and was survived by two sons, George and Winfred, and a daughter Carmelita. but critics suggested that the bacilli were being entrapped by clotting rather than destroyed. Nuttall, carried out a series of experiments with defibrinated blood from various species, and clearly established the germicidal action of blood in the absence of clotting, and also that the germicidal action was lost after the blood was heated to 55 °C. These results formed the basis of the humoral theory of immunity, as opposed to the cellular theory of Metchnikoff, and also stimulated the work that led to the development of antitoxin therapy, particularly for diphtheria and tetanus.
Phylogenetic relationships Darwin's theory of Evolution - descent with modification - provided a theoretical basis for classification in biology, species within a taxon sharing a more or less recent common ancestor. For nearly half a century, the only criteria for classification remained morphological, as had been the case with pre-evolutionary systems such as that of Linnaeus. Classification based on morphology has two main limitations: difficulty in dealing with convergent evolution where similar forms arise in species that are not closely related; and an inability to provide a quantitative measure of relatedness. The precipitin reaction was first described by Rudolf Kraus in 1897, an insoluble product being formed in an antigen-antibody interaction. The reaction was at first thought to be specific, but it was soon found that while the protein used to generate the antibody gave the strongest reaction, related proteins could give lesser reactions. This finding was developed by Nuttall into a quantitative method in which the amount of precipitate was measured. Using serum from a wide variety of animals he was able to show that the degree of immune reaction between species indicated the relationship between them. This work was the starting point for the field of molecular evolution.
Arthropods as disease vectors Anopheles maculipennis feeding. From Nuttall & Shipley (1901) In 1900 Nuttall and Austen published a book reviewing the evidence for transmission of disease by Insects, Arachnids and Myriapods, which included a discussion of the mosquito theory of malaria. Malaria had formerly been common in England, but few if any cases still occurred in 1900. Nuttall and colleagues carried out a survey of the distribution of the Anopheles mosquito in England, showing a concentration in the areas where malaria (ague) had previously been prevalent. The study suffered from the limitation of not distinguishing between the various species of mosquito, but its presentation, including maps, was one of the first of its kind. Nuttall and Shipley subsequently published a series of papers in The Journal of Hygiene on the structure and biology of Anopheles (1901–1903), which represented the most detailed study on the topic up to that time. Four Piroplasma canis parasites within a dog's red blood cell. From Nuttall & Graham-Smith (1905) Nuttall began working on ticks and tick-transmitted diseases in 1904. In a series of papers published with Graham-Smith in The Journal of Hygiene (1904–1907) Nuttall described the nature of the disease and the multiplication of the parasite in the blood of dogs. Subsequent work with Seymour Hadwen led to the discovery that trypan blue was an effective treatment both in dogs and cattle. This was a finding of great economic importance, and trypan blue became the standard treatment for piroplasmosis/babesiosis for many years.
Nuttall made extensive studies on ticks in collaboration with Cecil Warburton L.E. Robinson and F.W. Cooper. This led to numerous papers and an exhaustive monograph that appeared in three parts between 1908 and 1915. The publications, mostly in the journal Parasitology cover the anatomy, biology and classification of ticks, as well as observations on the diseases they transmit, including "tick paralysis". In the course of this work, Nuttall accumulated a very large collection of ticks from many parts of the world.
Parasites named for him Nuttallia — this name was given to a genus of piroplasms. However the name was found to be pre-occupied by a genus of North American bivalves and the generic name now used for the piroplasms is Babesia. Nuttalliellidae — Tick family found in southern Africa The family has a single species, Nuttalliella namaqua. Rhipicentor nuttalli Cooper, Cantab & Robinson, 1908 - Nuttall created the genus Rhipicentor, this species was named for him by his contemporaries. Dermacentor nuttalli Olenev, 1929 Ixodes nuttalli Lahille, 1913 Ixodes nuttallianus Schulze, 1930 Amblyomma nuttalli Dönitz, 1909
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Important facts
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Frequently asked questions
Who was George Nuttall?
American-British bacteriologist (1862–1937)
When was George Nuttall born?
George Nuttall was born on 5 July 1862 in San Francisco.
When did George Nuttall die?
George Nuttall died on 16 December 1937 in London.
What was George Nuttall's occupation?
George Nuttall was an immunologist, bacteriologist, university teacher, entomologist, microbiologist and physician.
What nationality was George Nuttall?
George Nuttall was British and American.
Sources & further reading
Cite this page
APA: Biography.guide. (2026). George Nuttall. https://biography.guide/george-nuttall/
MLA: "George Nuttall." Biography.guide, https://biography.guide/george-nuttall/.
Chicago: "George Nuttall." Biography.guide. https://biography.guide/george-nuttall/.
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